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We propose a more realistic quantity, defined as the kinetically accessible yield (KAY) to predict the maximum accessible yield for a given flux alteration.
For a given flux (growth rate), the steady state is achieved by (self) balancing the population size and nutrient concentration within the device.
Thus, a biologically optimal flux distribution is obtained by solving (1) For a given flux vector ν, we use R = { i: ν i ≠ 0}to denote the set of indices of the reactions participating in ν.
Altogether, the computation of a complete AIO table takes O((n+ p+ q)+ n p) operations for a given flux distribution v. Computing the extrema of the AIO coefficients among the convex polyhedron of plausible flux distributions v, leads to an optimization problem in a nonlinear context.
Through careful selection of which tracer rules to violate, ideally ones that have a lesser impact on the maximum sensitivity for a given flux, a single tracer can be chosen to resolve both free fluxes with precision that approaches that of the optimal tracers we suggested (see Additional file 6).
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We have presented a method for decomposing a given flux distribution into a set of constituent elementary modes.
An optics simulator is then used to compute the incident photon flux on the imaging plane for a given photon flux and system geometry.
It is found that for a given flow velocity the pyrolysate mass flux at ignition on the sample surface is independent of the external heat flux, whereas the sample surface temperature at ignition varies with the external heat flux.
Branch point analysis starts with the calculation of the split ratios for all metabolites based on the given flux distribution.
In fact, in Figure 10b, for a given heat flux, h nano is lower than h DI in most cases.
Furthermore, for a given heat flux, the wall superheat decreases with the increasing volume fraction of either Ag or MCNT, respectively.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com